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我国发展特高压输电中一些重要问题的讨论 被引量:266

DISCUSSION ON SEVERAL IMPORTANT PROBLEMS OF DEVELOPING UHV AC TRANSMISSON IN CHINA
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摘要 针对我国电网的发展趋势,指出发展特高压交流输电是缓解我国电力供应紧张状况的有效途径,也是改善电网结构、促进全国联网的需要。作者对目前我国特高压输电领域存在争议的一些问题进行了论述,包括:空气间隙绝缘饱和特性的认识、特高压输电电压等级的选取、特高压输电线路异常雷击跳闸率的有效防治、合成绝缘子在特高压输电线路防污闪中的应用、特高压输电线路和变电站对生态环境危害的控制、特高压输电的经济优越性以及与直流输电的相互关系等。我国建设特高压输电可在借鉴前苏联、日本、美国等国的研究成果的基础上,结合本国具体工程,进一步加强技术科研和相关设备的研制。 According to the development trend of power network in China, it is pointed out that the development of UHV AC transmission is not only an effictive approach to meet the growing demand of electric power, but also the requirement of improving power network structure and promoting the nation-wide power grid interconnection. Detailed discussion is then presented on several controversial problems existing in the UHV AC transmission field, including: knowledge about insulation characteristics of gas interval, selection of an appropriate voltage level, effective prevention measures for abnormal lightning trip-out percentage, application of composite insulators in the prevention of duty flashover, control of environmental influence caused by UHV transmission lines and substations, superiority of UHV in economy and relationship between UHV AC transmission and DC transmission. In the construction of domestic UHV AC transmission, the actual condition of UHV AC transmission engineering in China should be considered, and on the basis of using the research results of former USSR (Union of Soviet Socialist Republics), Japan and United States for reference, and more attention should be paid to the research on UHV transmission technology and the development of related equipments.
作者 周浩 余宇红
出处 《电网技术》 EI CSCD 北大核心 2005年第12期1-9,共9页 Power System Technology
关键词 特高压输电线路 特高压交流输电 雷击跳闸率 合成绝缘子 发展趋势 电力供应 电网结构 全国联网 饱和特性 空气间隙 电压等级 有效防治 环境危害 相互关系 直流输电 研究成果 防污闪 变电站 前苏联 Composite materials Electric insulation Electric lines Electric load management Electric power system interconnection Engineering research Environmental protection
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参考文献32

  • 1Friedlander, Gordon D. UHV: onward and upward[J]. IEEE Spectrum, 1977, 14(2): 56-65.
  • 2Paris L. Future of UHV transmission lines[J]. IEEE Spectrum, 1969,6(9): 44-51.
  • 3Nichols D K, Booker J R, Larzelere W. Testing and commissioning of modular UHV AC outdoor test system[J]. IEEE Transactions on PowerApparatus and Systems, 1984, 103(7): 1916-1922.
  • 4Darveniza M. Predicted lighting performance of 1000, 1300 and 1500kV UHV transmission lines[J]. Institution of Engineers, Australia,Electrical Engineering Transactions, 1977, 13(1): 5-9.
  • 5Manzoni G, Annestrand S A, Cardoso R et al. Electric power transmission at voltages of 1000 kV AC or ± 600 kV DC and above.Network problems and solutions peculiar to UHV AC transmission[J]. Electra, 1989, (122): 40-75.
  • 6Yamada N. Selection of target voltage UHV AC transmission[J]. Energy Developments in Japan (Chicago), 1983, 6(1): 21-30.
  • 7吴敬儒,徐永禧.我国特高压交流输电发展前景[J].电网技术,2005,29(3):1-4. 被引量:235
  • 8张文亮,吴维宁,胡毅.特高压输电技术的研究与我国电网的发展[J].高电压技术,2003,29(9):16-18. 被引量:147
  • 9郑健超.关于我国交流输电更高一级电压的选择[J].电网技术,1995,19(1):3-8. 被引量:25
  • 10项立人.应该加快我国特高压输电前期工作的研究[J].电网技术,1996,20(2):54-58. 被引量:32

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